= 6. A bullet of mass m = 8.00 g is fired into a block of mass M 250 g that is initially at rest at the edge of a frictionless table of height h 1.00 m, as shown in the figure below. The bullet remains in the block, and after the impact the block lands d = 2.00 m from the bottom of the = table. Determine the initial speed of the bullet. m M
= 6. A bullet of mass m = 8.00 g is fired into a block of mass M 250 g that is initially at rest at the edge of a frictionless table of height h 1.00 m, as shown in the figure below. The bullet remains in the block, and after the impact the block lands d = 2.00 m from the bottom of the = table. Determine the initial speed of the bullet. m M
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter6: Momentum, Impulse, And Collisions
Section: Chapter Questions
Problem 45P: A tennis ball of mass 57.0 g is held just above a basketball of mass 590 g. With their centers...
Question
![=
6. A bullet of mass m = 8.00 g is fired into a block of mass M 250 g that is initially at rest at
the edge of a frictionless table of height h 1.00 m, as shown in the figure below. The bullet
remains in the block, and after the impact the block lands d = 2.00 m from the bottom of the
=
table. Determine the initial speed of the bullet.
m
M](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5a897ece-3308-4566-8055-790e7cb4e78a%2F734121e1-001b-48c3-a3d0-d921867f1232%2F2ci6r4t_processed.png&w=3840&q=75)
Transcribed Image Text:=
6. A bullet of mass m = 8.00 g is fired into a block of mass M 250 g that is initially at rest at
the edge of a frictionless table of height h 1.00 m, as shown in the figure below. The bullet
remains in the block, and after the impact the block lands d = 2.00 m from the bottom of the
=
table. Determine the initial speed of the bullet.
m
M
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